A Novel Pathogenic Variant in the MN1 Gene in a Patient Presenting with Rhombencephalosynapsis and Craniofacial Anomalies, Expanding MN1 C-terminal Truncation Syndrome

Author:

Palma Carmen1,Patricia Pérez Mohand2,Lezana José M.1,Cruz Jaime2,Quesada Juan F.1,Vila Sara3,Álvarez-Mora Isabel1,Arteche-López Ana1,Gómez-Manjón Irene1,Sánchez M. Teresa1,Gómez-Rodríguez Maria José1,Sánchez Jaime2,Moreno-García Marta1

Affiliation:

1. Department of Genetics, Hospital Universitario Doce de Octubre, Madrid, Spain

2. Department of Pediatric Endocrinology, Hospital Universitario Doce de Octubre, Madrid, Spain

3. Department of Pediatric Neurology, Hospital Universitario Doce de Octubre, Madrid, Spain

Abstract

AbstractMeningioma-1 is a transcription activator that regulates mammalian palate development and is required for appropriate osteoblast proliferation, motility, differentiation, and function. Microdeletions involving the MN1 gene have been linked to syndromes including craniofacial anomalies, such as Toriello–Carey syndrome. Recently, truncating variants in the C-terminal portion of the MN1 transcriptional factor have been linked to a characteristic and distinct phenotype presenting with craniofacial anomalies and partial rhombencephalosynapsis, a rare brain malformation characterized by midline fusion of the cerebellar hemispheres with partial or complete loss of the cerebellar vermis. It has been called MN1 C-terminal truncation (MCTT) syndrome or CEBALID (Craniofacial defects, dysmorphic Ears, Brain Abnormalities, Language delay, and Intellectual Disability) and suggested to be caused by dominantly acting truncated protein MN1 instead of haploinsufficiency. As a proto-oncogene, MN1 is also involved in familial meningioma. In this study, we present a novel case of MCTT syndrome in a female patient presenting with craniofacial anomalies and rhombencephalosynapsis, harboring a de novo pathogenic variant in the MN1 gene: c.3686_3698del, p.(Met1229Argfs*87).

Publisher

Georg Thieme Verlag KG

Subject

Genetics (clinical),Pediatrics, Perinatology and Child Health

Reference16 articles.

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2. The Mn1 transcription factor acts upstream of Tbx22 and preferentially regulates posterior palate growth in mice;W Liu;Development,2008

3. A t(4;22) in a meningioma points to the localization of a putative tumor-suppressor gene;R H Lekanne Deprez;Am J Hum Genet,1991

4. Cloning and characterization of MN1, a gene from chromosome 22q11, which is disrupted by a balanced translocation in a meningioma;R H Lekanne Deprez;Oncogene,1995

5. Corpus callosum agenesis, facial anomalies, Robin sequence, and other anomalies: a new autosomal recessive syndrome?;H V Toriello;Am J Med Genet,1988

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